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Protected couplings and BPS dyons in half-maximal supersymmetric string vacua

Published 4 Aug 2016 in hep-th | (1608.01660v1)

Abstract: We analyze four- and six-derivative couplings in the low energy effective action of $D=3$ string vacua with half-maximal supersymmetry. In analogy with an earlier proposal for the $(\nabla\Phi)4$ coupling, we propose that the $\nabla2(\nabla\Phi)4$ coupling is given exactly by a manifestly U-duality invariant genus-two modular integral. In the limit where a circle in the internal torus decompactifies, the $\nabla2(\nabla\Phi)4$ coupling reduces to the $D2 F4$ and $R2 F2$ couplings in $D=4$, along with an infinite series of corrections of order $e{-R}$, from four-dimensional 1/4-BPS dyons whose wordline winds around the circle. Each of these contributions is weighted by a Fourier coefficient of a meromorphic Siegel modular form, explaining and extending standard results for the BPS index of 1/4-BPS dyons.

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